Deep Human Proteome Sequencing Enables Global Detection of Mutations and Alternative Splicing
deposit · DDA · 1 version · 3 papers
Deep Human Proteome Sequencing Enables Global Detection of Mutations and Alternative Splicing
| Kind | deposit |
| Acquisition | DDA |
Deep Human Proteome Sequencing Enables Global Detection of Mutations and Alternative Splicing
Versions
as deposited
Where it lives:
- PRIDE · PXD024364
Used by (3)
- Learning from tandem mass spectra at scale with a self-supervised foundation model for proteomics (2026) preprint as deposited
- False discovery rate control for trustworthy AI-based de novo peptide sequencing (2026) preprint as deposited
- Transforming de novo peptide sequencing by explainable AI (2024) preprint as deposited
Methods on these papers (3)
- FDR control for AI-based de novo sequencing post-processor
- InstaNovo-FM algorithm
- π-xNovo algorithm
Taken from the describing links only, so a paper that merely ran a tool on this data does not make that tool a method of it.